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International Space Exploration Coordination Group Assessment of Technology Gaps for Dust Mitigation for the Global Exploration Roadmap

机译:国际空间探索协调小组对全球探索路线图的减尘技术差距的评估

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The International Space Exploration Coordination Group (ISECG) formed two Gap Assessment teams to evaluate topic discipline areas that had not been worked at an international level to date. Accordingly, the ISECG Technology Working Group (TWG) recommended two discipline areas based on Global Exploration Roadmap (GER) Critical Technology Needs reflected within the GER Technology Development Map (GTDM): Dust Mitigation and LOX/Methane Propulsion, with this paper addressing the former. The ISECG approved the recommended Gap Assessment teams, and tasked the TWG to formulate the new teams with subject matter experts (SMEs) from the participating agencies. The participating agencies for the Dust Mitigation Gap Assessment Team were ASI, CSA, ESA, JAXA, and NASA. The team was asked to identify and make a presentation on technology gaps related to the GER2 mission scenario (including cislunar and lunar mission themes and long-lead items for human exploration of Mars) at the international level. In addition the team was tasked to produce a gap assessment in the form of a summary report and presentation identifying those GER Critical Technology Needs, including opportunities for international coordination and cooperation in closing the identified gaps. Dust is still a principal limiting factor in returning to the lunar surface for missions of any extended duration. However, viable technology solutions have been identified, but need maturation to be available to support both lunar and Mars missions.
机译:国际太空探索协调小组(ISECG)组成了两个差距评估小组,以评估迄今尚未在国际层面开展工作的主题学科领域。因此,ISECG技术工作组(TWG)根据GER技术开发图(GTDM)中反映的全球勘探路线图(GER)推荐的两个关键技术需求,推荐了两个学科领域:减尘和LOX /甲烷推进,本文针对前者。 ISECG批准了建议的差距评估团队,并责成TWG与参与机构的主题专家(SME)组成新团队。减少粉尘差距评估小组的参与机构是ASI,CSA,ESA,JAXA和NASA。要求该小组在国际一级确定和介绍与GER2任务情景有关的技术差距(包括月球和月球任务主题以及人类对火星的长期探索项目)。此外,该团队还被要求以总结报告和演示的形式进行差距评估,以识别那些GER关键技术需求,包括在缩小已发现差距方面进行国际协调与合作的机会。对于任何持续时间较长的任务,灰尘仍然是返回月球表面的主要限制因素。但是,已经确定了可行的技术解决方案,但是需要成熟才能支持月球和火星任务。

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